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The Influence of Environmental Aging on the Material Properties of Back-Molded Composite Sheets. <i>34th International Conference of the Polymer Processing Society (PPS)</i>. 34th International Conference of the Polymer Processing Society (PPS), Taipei (Taiwan).","short":"E. Moritzer, A. Hirsch, M. Hüttner, J. 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Hüttner. “The Influence of Hygrothermal Aging on the Material Properties of Continuous Fiber-Reinforced Thermoplastics.” In <i>76th Annual Technical Conference of the Society of Plastics Engineers (ANTEC)</i>, 2018."},"user_id":"44116","department":[{"_id":"9"},{"_id":"367"},{"_id":"321"}],"conference":{"name":"76th Annual Technical Conference of the Society of Plastics Engineers (ANTEC)","location":"Orlando (USA)"},"title":"The Influence of Hygrothermal Aging on the Material Properties of Continuous Fiber-Reinforced Thermoplastics","author":[{"first_name":"Elmar","full_name":"Moritzer, Elmar","last_name":"Moritzer","id":"20531"},{"last_name":"Hüttner","full_name":"Hüttner, M.","first_name":"M."}]},{"place":"Bielefeld","title":"Die Bedeutung von Kunststoffen für hybride Leichtbaustrukturen","author":[{"id":"20531","last_name":"Moritzer","full_name":"Moritzer, Elmar","first_name":"Elmar"},{"first_name":"B.","full_name":"Landgräber, B.","last_name":"Landgräber"}],"department":[{"_id":"9"},{"_id":"367"},{"_id":"321"}],"citation":{"mla":"Moritzer, Elmar, and B. Landgräber. “Die Bedeutung von Kunststoffen für hybride Leichtbaustrukturen.” <i>Wissenschaft im Angesicht großer gesellschaftlicher Herausforderungen</i>, 1st ed., 2018, pp. 127–40.","bibtex":"@inbook{Moritzer_Landgräber_2018, place={Bielefeld}, edition={1}, title={Die Bedeutung von Kunststoffen für hybride Leichtbaustrukturen}, booktitle={Wissenschaft im Angesicht großer gesellschaftlicher Herausforderungen}, author={Moritzer, Elmar and Landgräber, B.}, year={2018}, pages={127–140} }","short":"E. Moritzer, B. Landgräber, in: Wissenschaft im Angesicht großer gesellschaftlicher Herausforderungen, 1st ed., Bielefeld, 2018, pp. 127–140.","apa":"Moritzer, E., &#38; Landgräber, B. (2018). Die Bedeutung von Kunststoffen für hybride Leichtbaustrukturen. In <i>Wissenschaft im Angesicht großer gesellschaftlicher Herausforderungen</i> (1st ed., pp. 127–140).","ama":"Moritzer E, Landgräber B. Die Bedeutung von Kunststoffen für hybride Leichtbaustrukturen. In: <i>Wissenschaft im Angesicht großer gesellschaftlicher Herausforderungen</i>. 1st ed. ; 2018:127-140.","chicago":"Moritzer, Elmar, and B. Landgräber. “Die Bedeutung von Kunststoffen für hybride Leichtbaustrukturen.” In <i>Wissenschaft im Angesicht großer gesellschaftlicher Herausforderungen</i>, 1st ed., 127–40. Bielefeld, 2018.","ieee":"E. Moritzer and B. 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Brandler , <i>Failure behavior of short glass fiber reinforced polyamide under superimposed mechanical-enviromental fatigue</i>. 2018.","apa":"Brandler , P. R. (2018). <i>Failure behavior of short glass fiber reinforced polyamide under superimposed mechanical-enviromental fatigue</i>.","ama":"Brandler  PR. <i>Failure Behavior of Short Glass Fiber Reinforced Polyamide under Superimposed Mechanical-Enviromental Fatigue</i>.; 2018.","short":"P.R. Brandler , Failure Behavior of Short Glass Fiber Reinforced Polyamide under Superimposed Mechanical-Enviromental Fatigue, 2018.","mla":"Brandler , Patrick R. <i>Failure Behavior of Short Glass Fiber Reinforced Polyamide under Superimposed Mechanical-Enviromental Fatigue</i>. 2018.","bibtex":"@book{Brandler _2018, title={Failure behavior of short glass fiber reinforced polyamide under superimposed mechanical-enviromental fatigue}, author={Brandler , Patrick R.}, year={2018} }"},"user_id":"44116","title":"Failure behavior of short glass fiber reinforced polyamide under superimposed mechanical-enviromental fatigue","author":[{"last_name":"Brandler ","first_name":"Patrick R.","full_name":"Brandler , Patrick R."}]},{"_id":"27659","date_updated":"2022-01-06T06:57:43Z","date_created":"2021-11-22T07:34:53Z","status":"public","type":"dissertation","year":"2018","language":[{"iso":"eng"}],"user_id":"44116","citation":{"short":"F. Reinders , Analyse Und Modellierung Des Reckverfahrens von Mono- Und Biaxial Verstreckten Polypropylenfolien, 2018.","mla":"Reinders , Frauke. <i>Analyse Und Modellierung Des Reckverfahrens von Mono- Und Biaxial Verstreckten Polypropylenfolien</i>. 2018.","bibtex":"@book{Reinders _2018, title={Analyse und Modellierung des Reckverfahrens von mono- und biaxial verstreckten Polypropylenfolien}, author={Reinders , Frauke}, year={2018} }","chicago":"Reinders , Frauke. <i>Analyse Und Modellierung Des Reckverfahrens von Mono- Und Biaxial Verstreckten Polypropylenfolien</i>, 2018.","ieee":"F. Reinders , <i>Analyse und Modellierung des Reckverfahrens von mono- und biaxial verstreckten Polypropylenfolien</i>. 2018.","apa":"Reinders , F. (2018). <i>Analyse und Modellierung des Reckverfahrens von mono- und biaxial verstreckten Polypropylenfolien</i>.","ama":"Reinders  F. <i>Analyse Und Modellierung Des Reckverfahrens von Mono- Und Biaxial Verstreckten Polypropylenfolien</i>.; 2018."},"department":[{"_id":"9"},{"_id":"367"},{"_id":"321"}],"author":[{"last_name":"Reinders ","full_name":"Reinders , Frauke","first_name":"Frauke"}],"title":"Analyse und Modellierung des Reckverfahrens von mono- und biaxial verstreckten Polypropylenfolien"},{"language":[{"iso":"eng"}],"type":"dissertation","year":"2018","status":"public","date_created":"2021-11-22T07:35:52Z","date_updated":"2022-01-06T06:57:43Z","_id":"27660","title":"Charakterisierung des Bruchverhaltens von Polypropylen-Celluloseregeneratfaser-Verbunden","author":[{"full_name":"Zarges, Jan-Christoph","first_name":"Jan-Christoph","last_name":"Zarges"}],"department":[{"_id":"9"},{"_id":"367"},{"_id":"321"}],"citation":{"apa":"Zarges, J.-C. (2018). <i>Charakterisierung des Bruchverhaltens von Polypropylen-Celluloseregeneratfaser-Verbunden</i>.","ama":"Zarges J-C. <i>Charakterisierung Des Bruchverhaltens von Polypropylen-Celluloseregeneratfaser-Verbunden</i>.; 2018.","ieee":"J.-C. Zarges, <i>Charakterisierung des Bruchverhaltens von Polypropylen-Celluloseregeneratfaser-Verbunden</i>. 2018.","chicago":"Zarges, Jan-Christoph. <i>Charakterisierung Des Bruchverhaltens von Polypropylen-Celluloseregeneratfaser-Verbunden</i>, 2018.","bibtex":"@book{Zarges_2018, title={Charakterisierung des Bruchverhaltens von Polypropylen-Celluloseregeneratfaser-Verbunden}, author={Zarges, Jan-Christoph}, year={2018} }","mla":"Zarges, Jan-Christoph. <i>Charakterisierung Des Bruchverhaltens von Polypropylen-Celluloseregeneratfaser-Verbunden</i>. 2018.","short":"J.-C. Zarges, Charakterisierung Des Bruchverhaltens von Polypropylen-Celluloseregeneratfaser-Verbunden, 2018."},"user_id":"44116"},{"department":[{"_id":"9"},{"_id":"367"},{"_id":"321"}],"user_id":"44116","citation":{"apa":"Nikoleizig , P. A. (2018). <i>Inverse thermische Spritzgießwerkzeugauslegung auf Basis des lokalen Kühlbedarfs </i>.","ama":"Nikoleizig  PA. <i>Inverse Thermische Spritzgießwerkzeugauslegung Auf Basis Des Lokalen Kühlbedarfs </i>.; 2018.","ieee":"P. A. Nikoleizig , <i>Inverse thermische Spritzgießwerkzeugauslegung auf Basis des lokalen Kühlbedarfs </i>. 2018.","chicago":"Nikoleizig , Philipp Alexander. <i>Inverse Thermische Spritzgießwerkzeugauslegung Auf Basis Des Lokalen Kühlbedarfs </i>, 2018.","bibtex":"@book{Nikoleizig _2018, title={Inverse thermische Spritzgießwerkzeugauslegung auf Basis des lokalen Kühlbedarfs }, author={Nikoleizig , Philipp Alexander}, year={2018} }","mla":"Nikoleizig , Philipp Alexander. <i>Inverse Thermische Spritzgießwerkzeugauslegung Auf Basis Des Lokalen Kühlbedarfs </i>. 2018.","short":"P.A. Nikoleizig , Inverse Thermische Spritzgießwerkzeugauslegung Auf Basis Des Lokalen Kühlbedarfs , 2018."},"author":[{"last_name":"Nikoleizig ","full_name":"Nikoleizig , Philipp Alexander","first_name":"Philipp Alexander"}],"title":"Inverse thermische Spritzgießwerkzeugauslegung auf Basis des lokalen Kühlbedarfs ","date_updated":"2022-01-06T06:57:43Z","_id":"27662","status":"public","language":[{"iso":"eng"}],"year":"2018","type":"dissertation","date_created":"2021-11-22T07:38:03Z"},{"abstract":[{"lang":"eng","text":"By adding fibers to a polymer matrix, a reinforcement of the material can be achieved. Short fiber-reinforced polymers can easily be processed by the Fused Deposition Modeling (FDM) process without major modifications to the processing machine. For instance,short fiber-reinforced filaments can be processed to produce short fiber-reinforced components in the FDM process. In many other additive manufacturing processes this is not possible at this low cost. The choice of the matrix material, fiber type, fiber length and fiber orientation have a major influence on the properties of the produced component. In this paper, short fiber-reinforced filaments are processed by the FDM process. The processing properties and the resulting part properties are investigated with regard to fiber-specific influences. Additionally, the effects of different strand geometries and thus changed flow fields on the fiber orientation and mechanical part properties are investigated."}],"doi":"http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf","intvolume":"        29","title":"Processing Short Fiber Reinforced Polymers in the Fused Deposition Modeling Process","author":[{"last_name":"Schumacher","first_name":"C.","full_name":"Schumacher, C."},{"full_name":"Schöppner, Volker","first_name":"Volker","id":"20530","last_name":"Schöppner"},{"first_name":"S.","full_name":"Gnaase, S.","last_name":"Gnaase"}],"department":[{"_id":"219"},{"_id":"624"},{"_id":"367"},{"_id":"321"},{"_id":"9"}],"citation":{"ieee":"C. Schumacher, V. Schöppner, and S. Gnaase, “Processing Short Fiber Reinforced Polymers in the Fused Deposition Modeling Process,” in <i>29th Annual International Solid Freeform Fabrication Symposium</i>, 2018, vol. 29, pp. 1112–1120, doi: <a href=\"http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf\">http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf</a>.","chicago":"Schumacher, C., Volker Schöppner, and S. Gnaase. “Processing Short Fiber Reinforced Polymers in the Fused Deposition Modeling Process.” In <i>29th Annual International Solid Freeform Fabrication Symposium</i>, 29:1112–20, 2018. <a href=\"http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf\">http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf</a>.","apa":"Schumacher, C., Schöppner, V., &#38; Gnaase, S. (2018). Processing Short Fiber Reinforced Polymers in the Fused Deposition Modeling Process. <i>29th Annual International Solid Freeform Fabrication Symposium</i>, <i>29</i>, 1112–1120. <a href=\"http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf\">http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf</a>","ama":"Schumacher C, Schöppner V, Gnaase S. Processing Short Fiber Reinforced Polymers in the Fused Deposition Modeling Process. In: <i>29th Annual International Solid Freeform Fabrication Symposium</i>. Vol 29. ; 2018:1112-1120. doi:<a href=\"http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf\">http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf</a>","short":"C. Schumacher, V. Schöppner, S. Gnaase, in: 29th Annual International Solid Freeform Fabrication Symposium, 2018, pp. 1112–1120.","bibtex":"@inproceedings{Schumacher_Schöppner_Gnaase_2018, title={Processing Short Fiber Reinforced Polymers in the Fused Deposition Modeling Process}, volume={29}, DOI={<a href=\"http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf\">http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf</a>}, booktitle={29th Annual International Solid Freeform Fabrication Symposium}, author={Schumacher, C. and Schöppner, Volker and Gnaase, S.}, year={2018}, pages={1112–1120} }","mla":"Schumacher, C., et al. “Processing Short Fiber Reinforced Polymers in the Fused Deposition Modeling Process.” <i>29th Annual International Solid Freeform Fabrication Symposium</i>, vol. 29, 2018, pp. 1112–20, doi:<a href=\"http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf\">http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf</a>."},"user_id":"70729","language":[{"iso":"eng"}],"type":"conference","year":"2018","status":"public","date_created":"2021-05-07T13:22:59Z","publication":"29th Annual International Solid Freeform Fabrication Symposium","date_updated":"2022-01-06T06:55:22Z","page":"1112-1120","_id":"22020","volume":29},{"page":"83-88","_id":"22034","volume":10,"date_updated":"2022-01-06T06:55:23Z","publication":"Konstruktion - Zeitschrift für Produktentwicklung und Ingenieur-Werkstoffe","date_created":"2021-05-07T13:23:15Z","publisher":"VDI Fachmedien GmbH & Co. KG","year":"2018","publication_identifier":{"issn":["07205953"]},"type":"journal_article","language":[{"iso":"eng"}],"status":"public","citation":{"chicago":"Knoop, F., M. Köhler, Tobias Lieneke, Detmar Zimmer, and Volker Schöppner. “Erarbeitung von Konstruktionsregeln Für Hybridbauteile: Integration von Metallischen Einlegern in FDM-Strukturen.” <i>Konstruktion - Zeitschrift Für Produktentwicklung Und Ingenieur-Werkstoffe</i> 10 (2018): 83–88.","ieee":"F. Knoop, M. Köhler, T. Lieneke, D. Zimmer, and V. Schöppner, “Erarbeitung von Konstruktionsregeln für Hybridbauteile: Integration von metallischen Einlegern in FDM-Strukturen,” <i>Konstruktion - Zeitschrift für Produktentwicklung und Ingenieur-Werkstoffe</i>, vol. 10, pp. 83–88, 2018.","apa":"Knoop, F., Köhler, M., Lieneke, T., Zimmer, D., &#38; Schöppner, V. (2018). 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KG, 2018, pp. 83–88.","bibtex":"@article{Knoop_Köhler_Lieneke_Zimmer_Schöppner_2018, title={Erarbeitung von Konstruktionsregeln für Hybridbauteile: Integration von metallischen Einlegern in FDM-Strukturen}, volume={10}, journal={Konstruktion - Zeitschrift für Produktentwicklung und Ingenieur-Werkstoffe}, publisher={VDI Fachmedien GmbH &#38; Co. KG}, author={Knoop, F. and Köhler, M. and Lieneke, Tobias and Zimmer, Detmar and Schöppner, Volker}, year={2018}, pages={83–88} }"},"user_id":"70729","department":[{"_id":"219"},{"_id":"624"},{"_id":"367"},{"_id":"146"},{"_id":"321"},{"_id":"9"}],"title":"Erarbeitung von Konstruktionsregeln für Hybridbauteile: Integration von metallischen Einlegern in FDM-Strukturen","author":[{"last_name":"Knoop","full_name":"Knoop, F.","first_name":"F."},{"full_name":"Köhler, M.","first_name":"M.","last_name":"Köhler"},{"id":"13956","last_name":"Lieneke","first_name":"Tobias","full_name":"Lieneke, Tobias"},{"id":"604","last_name":"Zimmer","full_name":"Zimmer, Detmar","first_name":"Detmar"},{"full_name":"Schöppner, Volker","first_name":"Volker","last_name":"Schöppner","id":"20530"}],"intvolume":"        10"},{"intvolume":"         6","doi":"https://res.cloudinary.com/sternwald-systems/raw/upload/v1/hugoprd/ARTIKEL_ATTACH/00241B42_8D96DD914ED4/5029dcf18479b2d2f28f3c2032d6a0a5ac46d8ad/KU_2018_06_Additive-Fertigung-nach-Mass.pdf","author":[{"first_name":"F.","full_name":"Knoop, F.","last_name":"Knoop"},{"id":"13956","last_name":"Lieneke","first_name":"Tobias","full_name":"Lieneke, Tobias"},{"first_name":"Volker","full_name":"Schöppner, Volker","last_name":"Schöppner","id":"20530"},{"full_name":"Zimmer, Detmar","first_name":"Detmar","last_name":"Zimmer","id":"604"}],"title":"Additive Fertigung nach Maß","department":[{"_id":"219"},{"_id":"624"},{"_id":"367"},{"_id":"146"},{"_id":"321"},{"_id":"9"}],"user_id":"70729","citation":{"mla":"Knoop, F., et al. “Additive Fertigung Nach Maß.” <i>Kunststoffe</i>, vol. 6, 2018, pp. 70–73, doi:<a href=\"https://res.cloudinary.com/sternwald-systems/raw/upload/v1/hugoprd/ARTIKEL_ATTACH/00241B42_8D96DD914ED4/5029dcf18479b2d2f28f3c2032d6a0a5ac46d8ad/KU_2018_06_Additive-Fertigung-nach-Mass.pdf\">https://res.cloudinary.com/sternwald-systems/raw/upload/v1/hugoprd/ARTIKEL_ATTACH/00241B42_8D96DD914ED4/5029dcf18479b2d2f28f3c2032d6a0a5ac46d8ad/KU_2018_06_Additive-Fertigung-nach-Mass.pdf</a>.","bibtex":"@article{Knoop_Lieneke_Schöppner_Zimmer_2018, title={Additive Fertigung nach Maß}, volume={6}, DOI={<a href=\"https://res.cloudinary.com/sternwald-systems/raw/upload/v1/hugoprd/ARTIKEL_ATTACH/00241B42_8D96DD914ED4/5029dcf18479b2d2f28f3c2032d6a0a5ac46d8ad/KU_2018_06_Additive-Fertigung-nach-Mass.pdf\">https://res.cloudinary.com/sternwald-systems/raw/upload/v1/hugoprd/ARTIKEL_ATTACH/00241B42_8D96DD914ED4/5029dcf18479b2d2f28f3c2032d6a0a5ac46d8ad/KU_2018_06_Additive-Fertigung-nach-Mass.pdf</a>}, journal={Kunststoffe}, author={Knoop, F. and Lieneke, Tobias and Schöppner, Volker and Zimmer, Detmar}, year={2018}, pages={70–73} }","short":"F. Knoop, T. Lieneke, V. Schöppner, D. Zimmer, Kunststoffe 6 (2018) 70–73.","ama":"Knoop F, Lieneke T, Schöppner V, Zimmer D. Additive Fertigung nach Maß. <i>Kunststoffe</i>. 2018;6:70-73. doi:<a href=\"https://res.cloudinary.com/sternwald-systems/raw/upload/v1/hugoprd/ARTIKEL_ATTACH/00241B42_8D96DD914ED4/5029dcf18479b2d2f28f3c2032d6a0a5ac46d8ad/KU_2018_06_Additive-Fertigung-nach-Mass.pdf\">https://res.cloudinary.com/sternwald-systems/raw/upload/v1/hugoprd/ARTIKEL_ATTACH/00241B42_8D96DD914ED4/5029dcf18479b2d2f28f3c2032d6a0a5ac46d8ad/KU_2018_06_Additive-Fertigung-nach-Mass.pdf</a>","apa":"Knoop, F., Lieneke, T., Schöppner, V., &#38; Zimmer, D. (2018). Additive Fertigung nach Maß. <i>Kunststoffe</i>, <i>6</i>, 70–73. <a href=\"https://res.cloudinary.com/sternwald-systems/raw/upload/v1/hugoprd/ARTIKEL_ATTACH/00241B42_8D96DD914ED4/5029dcf18479b2d2f28f3c2032d6a0a5ac46d8ad/KU_2018_06_Additive-Fertigung-nach-Mass.pdf\">https://res.cloudinary.com/sternwald-systems/raw/upload/v1/hugoprd/ARTIKEL_ATTACH/00241B42_8D96DD914ED4/5029dcf18479b2d2f28f3c2032d6a0a5ac46d8ad/KU_2018_06_Additive-Fertigung-nach-Mass.pdf</a>","chicago":"Knoop, F., Tobias Lieneke, Volker Schöppner, and Detmar Zimmer. “Additive Fertigung Nach Maß.” <i>Kunststoffe</i> 6 (2018): 70–73. <a href=\"https://res.cloudinary.com/sternwald-systems/raw/upload/v1/hugoprd/ARTIKEL_ATTACH/00241B42_8D96DD914ED4/5029dcf18479b2d2f28f3c2032d6a0a5ac46d8ad/KU_2018_06_Additive-Fertigung-nach-Mass.pdf\">https://res.cloudinary.com/sternwald-systems/raw/upload/v1/hugoprd/ARTIKEL_ATTACH/00241B42_8D96DD914ED4/5029dcf18479b2d2f28f3c2032d6a0a5ac46d8ad/KU_2018_06_Additive-Fertigung-nach-Mass.pdf</a>.","ieee":"F. Knoop, T. Lieneke, V. Schöppner, and D. Zimmer, “Additive Fertigung nach Maß,” <i>Kunststoffe</i>, vol. 6, pp. 70–73, 2018, doi: <a href=\"https://res.cloudinary.com/sternwald-systems/raw/upload/v1/hugoprd/ARTIKEL_ATTACH/00241B42_8D96DD914ED4/5029dcf18479b2d2f28f3c2032d6a0a5ac46d8ad/KU_2018_06_Additive-Fertigung-nach-Mass.pdf\">https://res.cloudinary.com/sternwald-systems/raw/upload/v1/hugoprd/ARTIKEL_ATTACH/00241B42_8D96DD914ED4/5029dcf18479b2d2f28f3c2032d6a0a5ac46d8ad/KU_2018_06_Additive-Fertigung-nach-Mass.pdf</a>."},"status":"public","type":"journal_article","publication_identifier":{"issn":["0023-5563"]},"year":"2018","language":[{"iso":"eng"}],"publication":"Kunststoffe","date_created":"2021-05-07T13:23:16Z","date_updated":"2022-01-06T06:55:23Z","volume":6,"_id":"22035","page":"70-73"},{"title":"Processing Short Fiber Reinforced Polymers in the Fused Deposition Modeling Process","author":[{"full_name":"Schumacher, C.","first_name":"C.","last_name":"Schumacher"},{"full_name":"Schöppner, Volker","first_name":"Volker","last_name":"Schöppner","id":"20530"},{"last_name":"Gnaase","full_name":"Gnaase, S.","first_name":"S."}],"abstract":[{"text":"By adding fibers to a polymer matrix, a reinforcement of the material can be achieved. Short fiber-reinforced polymers can easily be processed by the Fused Deposition Modeling (FDM) process without major modifications to the processing machine. For instance, short fiber-reinforcedfilaments can be processed to produce short fiber-reinforced components in the FDM process. In many other additive manufacturing processes this is not possible at this low cost. The choice of the matrix material, fiber type, fiber length and fiber orientation have a major influence on the properties of the produced component. In this paper, short fiber-reinforced filaments are processed by the FDM process. The processing properties and the resulting part properties are investigatedwith regard to fiber-specific influences. Additionally, the effects of different strand geometries and thus changed flow fields on the fiber orientation and mechanical part properties are investigated.","lang":"eng"}],"doi":"http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf","intvolume":"        29","citation":{"bibtex":"@inproceedings{Schumacher_Schöppner_Gnaase_2018, title={Processing Short Fiber Reinforced Polymers in the Fused Deposition Modeling Process}, volume={29}, DOI={<a href=\"http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf\">http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf</a>}, booktitle={29th Annual International Solid Freeform Fabrication Symposium}, author={Schumacher, C. and Schöppner, Volker and Gnaase, S.}, year={2018}, pages={1112–1120} }","mla":"Schumacher, C., et al. “Processing Short Fiber Reinforced Polymers in the Fused Deposition Modeling Process.” <i>29th Annual International Solid Freeform Fabrication Symposium</i>, vol. 29, 2018, pp. 1112–20, doi:<a href=\"http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf\">http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf</a>.","short":"C. Schumacher, V. Schöppner, S. Gnaase, in: 29th Annual International Solid Freeform Fabrication Symposium, 2018, pp. 1112–1120.","apa":"Schumacher, C., Schöppner, V., &#38; Gnaase, S. (2018). Processing Short Fiber Reinforced Polymers in the Fused Deposition Modeling Process. <i>29th Annual International Solid Freeform Fabrication Symposium</i>, <i>29</i>, 1112–1120. <a href=\"http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf\">http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf</a>","ama":"Schumacher C, Schöppner V, Gnaase S. Processing Short Fiber Reinforced Polymers in the Fused Deposition Modeling Process. In: <i>29th Annual International Solid Freeform Fabrication Symposium</i>. Vol 29. ; 2018:1112-1120. doi:<a href=\"http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf\">http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf</a>","ieee":"C. Schumacher, V. Schöppner, and S. Gnaase, “Processing Short Fiber Reinforced Polymers in the Fused Deposition Modeling Process,” in <i>29th Annual International Solid Freeform Fabrication Symposium</i>, 2018, vol. 29, pp. 1112–1120, doi: <a href=\"http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf\">http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf</a>.","chicago":"Schumacher, C., Volker Schöppner, and S. Gnaase. “Processing Short Fiber Reinforced Polymers in the Fused Deposition Modeling Process.” In <i>29th Annual International Solid Freeform Fabrication Symposium</i>, 29:1112–20, 2018. <a href=\"http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf\">http://utw10945.utweb.utexas.edu/sites/default/files/2018/090%20ProcessingShortFiberReinforcedPolymersinthe.pdf</a>."},"user_id":"70729","department":[{"_id":"219"},{"_id":"624"},{"_id":"367"},{"_id":"321"},{"_id":"9"}],"date_created":"2021-05-07T13:23:26Z","publication":"29th Annual International Solid Freeform Fabrication Symposium","language":[{"iso":"eng"}],"type":"conference","year":"2018","status":"public","page":"1112-1120","_id":"22043","volume":29,"date_updated":"2022-01-06T06:55:23Z"},{"intvolume":"        11","author":[{"last_name":"Camberg","id":"60544","full_name":"Camberg, Alan Adam","first_name":"Alan Adam"},{"first_name":"Katja","full_name":"Engelkemeier, Katja","last_name":"Engelkemeier"},{"full_name":"Dietrich, Jan","first_name":"Jan","last_name":"Dietrich"},{"last_name":"Heggemann","full_name":"Heggemann, Thomas","first_name":"Thomas"}],"department":[{"_id":"9"},{"_id":"321"},{"_id":"149"}],"publication_status":"published","citation":{"ieee":"A. A. Camberg, K. Engelkemeier, J. Dietrich, and T. Heggemann, “Top-down design of tailored fiber-metal laminates,” <i>Lightweight Design worldwide</i>, vol. 11, no. 2, pp. 24–29, 2018.","chicago":"Camberg, Alan Adam, Katja Engelkemeier, Jan Dietrich, and Thomas Heggemann. “Top-down Design of Tailored Fiber-Metal Laminates.” <i>Lightweight Design Worldwide</i> 11, no. 2 (2018): 24–29. <a href=\"https://doi.org/10.1007/s41777-018-0004-1\">https://doi.org/10.1007/s41777-018-0004-1</a>.","ama":"Camberg AA, Engelkemeier K, Dietrich J, Heggemann T. Top-down design of tailored fiber-metal laminates. <i>Lightweight Design worldwide</i>. 2018;11(2):24-29. doi:<a href=\"https://doi.org/10.1007/s41777-018-0004-1\">10.1007/s41777-018-0004-1</a>","apa":"Camberg, A. A., Engelkemeier, K., Dietrich, J., &#38; Heggemann, T. (2018). Top-down design of tailored fiber-metal laminates. <i>Lightweight Design Worldwide</i>, <i>11</i>(2), 24–29. <a href=\"https://doi.org/10.1007/s41777-018-0004-1\">https://doi.org/10.1007/s41777-018-0004-1</a>","short":"A.A. Camberg, K. Engelkemeier, J. Dietrich, T. Heggemann, Lightweight Design Worldwide 11 (2018) 24–29.","bibtex":"@article{Camberg_Engelkemeier_Dietrich_Heggemann_2018, title={Top-down design of tailored fiber-metal laminates}, volume={11}, DOI={<a href=\"https://doi.org/10.1007/s41777-018-0004-1\">10.1007/s41777-018-0004-1</a>}, number={2}, journal={Lightweight Design worldwide}, publisher={Springer Vieweg}, author={Camberg, Alan Adam and Engelkemeier, Katja and Dietrich, Jan and Heggemann, Thomas}, year={2018}, pages={24–29} }","mla":"Camberg, Alan Adam, et al. “Top-down Design of Tailored Fiber-Metal Laminates.” <i>Lightweight Design Worldwide</i>, vol. 11, no. 2, Springer Vieweg, 2018, pp. 24–29, doi:<a href=\"https://doi.org/10.1007/s41777-018-0004-1\">10.1007/s41777-018-0004-1</a>."},"status":"public","language":[{"iso":"eng"}],"publication_identifier":{"issn":["2510-2877"]},"year":"2018","publisher":"Springer Vieweg","date_created":"2020-02-11T10:25:31Z","date_updated":"2022-01-06T06:52:39Z","_id":"15876","doi":"10.1007/s41777-018-0004-1","project":[{"name":"Computing Resources Provided by the Paderborn Center for Parallel Computing","_id":"52"}],"title":"Top-down design of tailored fiber-metal laminates","user_id":"60544","type":"journal_article","publication":"Lightweight Design worldwide","issue":"2","volume":11,"page":"24-29"},{"doi":"10.1016/j.tws.2018.07.051","extern":"1","author":[{"last_name":"Tasdemirci","full_name":"Tasdemirci, Alper","first_name":"Alper"},{"first_name":"Emine Fulya","full_name":"Akbulut Irmak, Emine Fulya","last_name":"Akbulut Irmak","id":"72008","orcid":"0000-0002-1338-810X"},{"first_name":"Erkan","full_name":"Guzel, Erkan","last_name":"Guzel"},{"last_name":"Tuzgel","first_name":"Firat","full_name":"Tuzgel, Firat"},{"full_name":"Yucesoy, Atacan","first_name":"Atacan","last_name":"Yucesoy"},{"full_name":"Sahin, Selim","first_name":"Selim","last_name":"Sahin"},{"full_name":"Guden, Mustafa","first_name":"Mustafa","last_name":"Guden"}],"title":"Crushing behavior and energy absorption performance of a bio-inspired metallic structure: Experimental and numerical study","department":[{"_id":"9"},{"_id":"321"},{"_id":"149"}],"publication_status":"published","user_id":"72008","citation":{"chicago":"Tasdemirci, Alper, Emine Fulya Akbulut Irmak, Erkan Guzel, Firat Tuzgel, Atacan Yucesoy, Selim Sahin, and Mustafa Guden. “Crushing Behavior and Energy Absorption Performance of a Bio-Inspired Metallic Structure: Experimental and Numerical Study.” <i>Thin-Walled Structures</i>, 2018, 547–55. <a href=\"https://doi.org/10.1016/j.tws.2018.07.051\">https://doi.org/10.1016/j.tws.2018.07.051</a>.","ieee":"A. Tasdemirci <i>et al.</i>, “Crushing behavior and energy absorption performance of a bio-inspired metallic structure: Experimental and numerical study,” <i>Thin-Walled Structures</i>, pp. 547–555, 2018.","apa":"Tasdemirci, A., Akbulut Irmak, E. F., Guzel, E., Tuzgel, F., Yucesoy, A., Sahin, S., &#38; Guden, M. (2018). Crushing behavior and energy absorption performance of a bio-inspired metallic structure: Experimental and numerical study. <i>Thin-Walled Structures</i>, 547–555. <a href=\"https://doi.org/10.1016/j.tws.2018.07.051\">https://doi.org/10.1016/j.tws.2018.07.051</a>","ama":"Tasdemirci A, Akbulut Irmak EF, Guzel E, et al. Crushing behavior and energy absorption performance of a bio-inspired metallic structure: Experimental and numerical study. <i>Thin-Walled Structures</i>. 2018:547-555. doi:<a href=\"https://doi.org/10.1016/j.tws.2018.07.051\">10.1016/j.tws.2018.07.051</a>","short":"A. Tasdemirci, E.F. Akbulut Irmak, E. Guzel, F. Tuzgel, A. Yucesoy, S. Sahin, M. Guden, Thin-Walled Structures (2018) 547–555.","mla":"Tasdemirci, Alper, et al. “Crushing Behavior and Energy Absorption Performance of a Bio-Inspired Metallic Structure: Experimental and Numerical Study.” <i>Thin-Walled Structures</i>, 2018, pp. 547–55, doi:<a href=\"https://doi.org/10.1016/j.tws.2018.07.051\">10.1016/j.tws.2018.07.051</a>.","bibtex":"@article{Tasdemirci_Akbulut Irmak_Guzel_Tuzgel_Yucesoy_Sahin_Guden_2018, title={Crushing behavior and energy absorption performance of a bio-inspired metallic structure: Experimental and numerical study}, DOI={<a href=\"https://doi.org/10.1016/j.tws.2018.07.051\">10.1016/j.tws.2018.07.051</a>}, journal={Thin-Walled Structures}, author={Tasdemirci, Alper and Akbulut Irmak, Emine Fulya and Guzel, Erkan and Tuzgel, Firat and Yucesoy, Atacan and Sahin, Selim and Guden, Mustafa}, year={2018}, pages={547–555} }"},"status":"public","language":[{"iso":"eng"}],"year":"2018","publication_identifier":{"issn":["0263-8231"]},"type":"journal_article","date_created":"2020-02-21T15:34:12Z","publication":"Thin-Walled Structures","date_updated":"2022-01-06T06:52:41Z","page":"547-555","_id":"15977"},{"citation":{"apa":"Camberg, A. A., &#38; Tröster, T. (2018). Optimization-based material design of tailored stacked hybrids for further improvement in lightweight car body structures. In <i>HYBRID - MATERIALS AND STRUCTURES 2018 - PROCEEDINGS</i>. Bremen: DGM - Deutsche Gesellschaft für Materialkunde e.V.","ama":"Camberg AA, Tröster T. Optimization-based material design of tailored stacked hybrids for further improvement in lightweight car body structures. In: <i>HYBRID - MATERIALS AND STRUCTURES 2018 - PROCEEDINGS</i>. DGM - Deutsche Gesellschaft für Materialkunde e.V.; 2018.","ieee":"A. A. Camberg and T. Tröster, “Optimization-based material design of tailored stacked hybrids for further improvement in lightweight car body structures,” in <i>HYBRID - MATERIALS AND STRUCTURES 2018 - PROCEEDINGS</i>, Bremen, 2018.","chicago":"Camberg, Alan Adam, and Thomas Tröster. “Optimization-Based Material Design of Tailored Stacked Hybrids for Further Improvement in Lightweight Car Body Structures.” In <i>HYBRID - MATERIALS AND STRUCTURES 2018 - PROCEEDINGS</i>. DGM - Deutsche Gesellschaft für Materialkunde e.V., 2018.","bibtex":"@inproceedings{Camberg_Tröster_2018, title={Optimization-based material design of tailored stacked hybrids for further improvement in lightweight car body structures}, booktitle={HYBRID - MATERIALS AND STRUCTURES 2018 - PROCEEDINGS}, publisher={DGM - Deutsche Gesellschaft für Materialkunde e.V.}, author={Camberg, Alan Adam and Tröster, Thomas}, year={2018} }","mla":"Camberg, Alan Adam, and Thomas Tröster. “Optimization-Based Material Design of Tailored Stacked Hybrids for Further Improvement in Lightweight Car Body Structures.” <i>HYBRID - MATERIALS AND STRUCTURES 2018 - PROCEEDINGS</i>, DGM - Deutsche Gesellschaft für Materialkunde e.V., 2018.","short":"A.A. Camberg, T. Tröster, in: HYBRID - MATERIALS AND STRUCTURES 2018 - PROCEEDINGS, DGM - Deutsche Gesellschaft für Materialkunde e.V., 2018."},"publication_status":"published","user_id":"60544","department":[{"_id":"9"},{"_id":"321"},{"_id":"149"}],"title":"Optimization-based material design of tailored stacked hybrids for further improvement in lightweight car body structures","conference":{"start_date":"2018-04-18","location":"Bremen","name":"3rd International Conference on Hybrid Materials and Structures","end_date":"2018-04-19"},"author":[{"id":"60544","last_name":"Camberg","first_name":"Alan Adam","full_name":"Camberg, Alan Adam"},{"last_name":"Tröster","id":"553","full_name":"Tröster, Thomas","first_name":"Thomas"}],"_id":"16034","date_updated":"2022-01-06T06:52:42Z","date_created":"2020-02-24T14:59:47Z","publication":"HYBRID - MATERIALS AND STRUCTURES 2018 - PROCEEDINGS","publisher":"DGM - Deutsche Gesellschaft für Materialkunde e.V.","language":[{"iso":"eng"}],"publication_identifier":{"isbn":["978-3-88355-417-4"]},"year":"2018","type":"conference","status":"public"},{"status":"public","language":[{"iso":"ger"}],"type":"conference","year":"2018","date_created":"2020-02-24T15:57:52Z","date_updated":"2022-01-06T06:52:42Z","_id":"16039","author":[{"first_name":"Dominik","full_name":"Ahlers, Dominik","id":"11207","last_name":"Ahlers"},{"id":"553","last_name":"Tröster","first_name":"Thomas","full_name":"Tröster, Thomas"}],"title":"Entwicklung einer Prozessroute für die Luftfahrtindustrie mit erhöhter Aufbaurate im Laserstrahlschmelzprozess von Ti6Al4V","conference":{"start_date":"2018-06-07","location":"Erfurt","name":"Rapid.Tech 2018 – Fachforum Luftfahrt"},"department":[{"_id":"9"},{"_id":"321"},{"_id":"149"},{"_id":"219"}],"user_id":"11207","citation":{"short":"D. Ahlers, T. Tröster, in: 2018.","mla":"Ahlers, Dominik, and Thomas Tröster. <i>Entwicklung einer Prozessroute für die Luftfahrtindustrie mit erhöhter Aufbaurate im Laserstrahlschmelzprozess von Ti6Al4V</i>. 2018.","bibtex":"@inproceedings{Ahlers_Tröster_2018, title={Entwicklung einer Prozessroute für die Luftfahrtindustrie mit erhöhter Aufbaurate im Laserstrahlschmelzprozess von Ti6Al4V}, author={Ahlers, Dominik and Tröster, Thomas}, year={2018} }","chicago":"Ahlers, Dominik, and Thomas Tröster. “Entwicklung einer Prozessroute für die Luftfahrtindustrie mit erhöhter Aufbaurate im Laserstrahlschmelzprozess von Ti6Al4V,” 2018.","ieee":"D. Ahlers and T. Tröster, “Entwicklung einer Prozessroute für die Luftfahrtindustrie mit erhöhter Aufbaurate im Laserstrahlschmelzprozess von Ti6Al4V,” presented at the Rapid.Tech 2018 – Fachforum Luftfahrt, Erfurt, 2018.","ama":"Ahlers D, Tröster T. Entwicklung einer Prozessroute für die Luftfahrtindustrie mit erhöhter Aufbaurate im Laserstrahlschmelzprozess von Ti6Al4V. In: ; 2018.","apa":"Ahlers, D., &#38; Tröster, T. (2018). Entwicklung einer Prozessroute für die Luftfahrtindustrie mit erhöhter Aufbaurate im Laserstrahlschmelzprozess von Ti6Al4V. 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